膜
生物物理学
脂质双层
化学
跨膜蛋白
双层
膜蛋白
生物膜
膜生物物理学
分子动力学
跨膜结构域
调制(音乐)
膜脂
两亲性
离子通道
细胞膜
膜电位
膜结构
蛋白质结构
电生理学
细胞生物学
生物
神经科学
作者
Dima Bolmatov,Russel J. Reiter,Dmitry Zav’yalov,Changwoo Do,Gergely Nagy,Charles Patrick Collier,John Katsaras,Maxim O. Lavrentovich
标识
DOI:10.1021/acschemneuro.5c00682
摘要
Melatonin, a hormone primarily produced by the brain's pineal gland, not only regulates circadian rhythms, but also influences the structural and biophysical properties of neuronal membranes. Its amphiphilic nature enables direct incorporation into lipid bilayers and preferential interactions with cholesterol-rich lipid rafts, critical hubs for cellular signaling and membrane organization. Despite increasing recognition of its membrane activity, the molecular basis of melatonin's interactions with coexisting liquid-ordered (Lo) and liquid-disordered (Ld) phases remains unclear. Here, we combine small-angle neutron scattering (SANS) and all-atom molecular dynamics simulations to examine model neuronal membranes composed of DSPC, DOPC, POPC, and cholesterol. Our results show that melatonin preserves domain morphology while adopting distinct orientations within the bilayer and at the membrane interface, allowing both lateral and transmembrane bridging across lipid phases. These findings establish the molecular underpinnings of melatonin's modulation of membrane heterogeneity and provide strong support for its receptor-independent actions.
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